Human KCNQ5 de novo mutations underlie epilepsy and intellectual disability

被引:9
|
作者
Wei, Aguan D. [1 ]
Wakenight, Paul [1 ]
Zwingman, Theresa A. [1 ]
Bard, Angela M. [1 ]
Sahai, Nikhil [1 ]
Willemsen, Marjolein H. [5 ,6 ,7 ]
Schelhaas, Helenius J. [8 ]
Stegmann, Alexander P. A. [9 ]
Verhoeven, Judith S. [8 ]
de Man, Stella A. [10 ,11 ]
Wessels, Marja W. [11 ]
Kleefstra, Tjitske [5 ,6 ]
Shinde, Deepali N. [12 ]
Helbig, Katherine L. [12 ,13 ]
Basinger, Alice [14 ]
Wagner, Victoria F. [15 ]
Rodriguez-Buritica, David [15 ]
Bryant, Emily [16 ]
Millichap, John J. [16 ,17 ,18 ]
Millen, Kathleen J. [1 ,2 ]
Dobyns, William B. [1 ,2 ,4 ]
Ramirez, Jan-Marino [1 ,3 ]
Kalume, Franck K. [1 ,3 ]
机构
[1] Seattle Childrens Res Inst, Ctr Integrat Brain Res, Seattle, WA 98101 USA
[2] Univ Washington, Sch Med, Dept Pediat, Seattle, WA 98195 USA
[3] Univ Washington, Sch Med, Dept Neurol Surg, Seattle, WA 98195 USA
[4] Univ Washington, Sch Med, Dept Neurol, Seattle, WA USA
[5] Radboud Univ Nijmegen, Dept Human Genet, Med Ctr, Nijmegen, Netherlands
[6] Radboud Univ Nijmegen, Donders Inst Brain Cognit & Behav, Med Ctr, Nijmegen, Netherlands
[7] Maastricht Univ, Dept Human Genet, Med Ctr, Maastricht, Netherlands
[8] Acad Ctr Epileptol Kempenhaeghe, Dept Neurol, Heeze, Netherlands
[9] Maastricht Univ, Dept Clin Genet, Med Ctr, Maastricht, Netherlands
[10] Amphia Hosp, Dept Pediat, Breda, Netherlands
[11] Erasmus MC, Dept Human Genet, Rotterdam, Netherlands
[12] Ambry Genet, Aliso Viejo, CA USA
[13] Childrens Hosp Philadelphia, Div Neurol, Philadelphia, PA 19104 USA
[14] Cook Childrens Hosp, Med Genet, Ft Worth, TX USA
[15] Univ Texas Hlth Sci Ctr Houston, Dept Pediat, Houston, TX 77030 USA
[16] Northwestern Univ, Dept Pediat, Feinberg Sch Med, Chicago, IL 60611 USA
[17] Northwestern Univ, Dept Neurol, Feinberg Sch Med, Chicago, IL USA
[18] Ann & Robert H Lurie Childrens Hosp Chicago, Epilepsy Ctr, Chicago, IL 60611 USA
关键词
channelopathy; epilepsy; intellectual disability; KCNQ5; M current; POTASSIUM CHANNEL GENE; OF-FUNCTION MUTATIONS; FUNCTIONAL EXPRESSION; NEURONAL EXCITABILITY; SIGNALING COMPLEX; DRAVET SYNDROME; VOLTAGE SENSOR; MOUSE MODEL; SEIZURES; SUBUNIT;
D O I
10.1152/jn.00509.2021
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We identified six novel de novo human KCNQ5 variants in children with motor/language delay, intellectual disability (ID), and/or epilepsy by whole exome sequencing. These variants, comprising two nonsense and four missense alterations, were functionally characterized by electrophysiology in HEK293/CHO cells, together with four previously reported KCNQ5 missense variants (Lehman A, Thouta S, Mancini GM, Naidu S, van Slegtenhorst M, McWalter K, Person R, Mwenifumbo J, Salvarinova R; CAUSES Study; EPGEN Study; Guella I, McKenzie MB, Datta A, Connolly MB, Kalkhoran SM, Poburko D, Friedman JM, Farrer MJ, Demos M, Desai S, Claydon T. Am J Hum Genet 101: 65-74, 2017). Surprisingly, all eight missense variants resulted in gain of function (GOF) due to hyperpolarized voltage dependence of activation or slowed deactivation kinetics, whereas the two nonsense variants were confirmed to be loss of function (LOF). One severe GOF allele (P369T) was tested and found to extend a dominant GOF effect to heteromeric KCNQ5/3 channels. Clinical presentations were associated with altered KCNQ5 channel gating: milder presentations with LOF or smaller GOF shifts in voltage dependence [change in voltage at half-maximal conduction (Delta V-50) = similar to-15 mV] and severe presentations with larger GOF shifts in voltage dependence (Delta V-50 = similar to-30 mV). To examine LOF pathogenicity, two Kcnq5 LOF mouse lines were created with CRISPR/Cas9. Both lines exhibited handling- and thermal-induced seizures and abnormal cortical EEGs consistent with epileptiform activity. Our study thus provides evidence for in vivo KCNQ5 LOF pathogenicity and strengthens the contribution of both LOF and GOF mutations to global pediatric neurological impairment, including ID/epilepsy. NEW & NOTEWORTHY Six novel de novo human KCNQ5 variants were identified from children with neurodevelopmental delay, intellectual disability, and/or epilepsy. Expression of these variants along with four previously reported KCNQ5 variants from a similar cohort revealed GOF potassium channels, negatively shifted in V-50 of activation and/or delayed deactivation kinetics. GOF is extended to KCNQ5/3 heteromeric channels, making these the predominant channels affected in heterozygous de novo patients. Kcnq5 LOF mice exhibited seizures, consistent with in vivo pathogenicity.
引用
收藏
页码:40 / 61
页数:22
相关论文
共 50 条
  • [1] Loss-of-Function and Gain-of-Function Mutations in KCNQ5 Cause Intellectual Disability or Epileptic Encephalopathy
    Lehman, Anna
    Thouta, Samrat
    Mancini, Grazia M. S.
    Naidu, Sakkubai
    van Slegtenhorst, Marjon
    McWalter, Kirsty
    Person, Richard
    Mwenifumbo, Jill
    Salvarinova, Ramona
    Guella, Ilaria
    McKenzie, Marna B.
    Datta, Anita
    Connolly, Mary B.
    Kalkhoran, Somayeh Mojard
    Poburko, Damon
    Friedman, Jan M.
    Farrer, Matthew J.
    Demos, Michelle
    Desai, Sonal
    Claydon, Thomas
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2017, 101 (01) : 65 - 74
  • [2] De Novo Mutations in Moderate or Severe Intellectual Disability
    Hamdan, Fadi F.
    Srour, Myriam
    Capo-Chichi, Jose-Mario
    Daoud, Hussein
    Nassif, Christina
    Patry, Lysanne
    Massicotte, Christine
    Ambalavanan, Amirthagowri
    Spiegelman, Dan
    Diallo, Ousmane
    Henrion, Edouard
    Dionne-Laporte, Alexandre
    Fougerat, Anne
    Pshezhetsky, Alexey V.
    Venkateswaran, Sunita
    Rouleau, Guy A.
    Michaud, Jacques L.
    [J]. PLOS GENETICS, 2014, 10 (10):
  • [3] Regulatory de novo mutations underlying intellectual disability
    Vas, Matias G. De
    Boulet, Fanny
    Joshi, Shweta S.
    Garstang, Myles G.
    Khan, Tahir N.
    Atla, Goutham
    Parry, David
    Moore, David
    Cebola, Ines
    Zhang, Shuchen
    Cui, Wei
    Lampe, Anne K.
    Lam, Wayne W.
    Ferrer, Jorge
    Pradeepa, Madapura M.
    Atanur, Santosh S.
    [J]. LIFE SCIENCE ALLIANCE, 2023, 6 (05)
  • [4] De novo mutations of KIAA2022 in females cause intellectual disability and intractable epilepsy
    de Lange, Iris M.
    Helbig, Katherine L.
    Weckhuysen, Sarah
    Moller, Rikke S.
    Velinov, Milen
    Dolzhanskaya, Natalia
    Marsh, Eric
    Helbig, Ingo
    Devinsky, Orrin
    Tang, Sha
    Mefford, Heather C.
    Myers, Candace T.
    van Paesschen, Wim
    Striano, Pasquale
    van Gassen, Koen
    van Kempen, Marjan
    de Kovel, Carolien G. F.
    Piard, Juliette
    Minassian, Berge A.
    Nezarati, Marjan M.
    Pessoa, Andre
    Jacquette, Aurelia
    Maher, Bridget
    Balestrini, Simona
    Sisodiya, Sanjay
    Warde, Marie Therese Abi
    De St Martin, Anne
    Chelly, Jamel
    van 't Slot, Ruben
    Van Maldergem, Lionel
    Brilstra, Eva H.
    Koeleman, Bobby P. C.
    [J]. JOURNAL OF MEDICAL GENETICS, 2016, 53 (12) : 850 - 858
  • [5] DE NOVO MUTATIONS OF KIAA2022 IN FEMALES CAUSE INTELLECTUAL DISABILITY AND INTRACTABLE EPILEPSY
    De lange, I
    Helbig, K.
    Weckhuysen, S.
    Moller, R.
    Velinov, M.
    Dolzhanskaya, N.
    Marsh, E.
    Helbig, I
    Devinsky, O.
    Tang, S.
    Mefford, H.
    Myers, C.
    Van Paesschen, W.
    Striano, P.
    Van Gassen, K.
    Van Kempen, M.
    De Kovel, C.
    Piard, J.
    Minassian, B.
    Nezarati, M.
    Pessoa, A.
    Jacquette, A.
    Van't Slot, R.
    Van Maldergem, L.
    Brilstra, E.
    Koeleman, B.
    [J]. EPILEPSIA, 2016, 57 : 113 - 114
  • [7] Novel de novo EEF1A2 missense mutations causing epilepsy and intellectual disability
    Lam, Wayne W. K.
    Millichap, John J.
    Soares, Dinesh C.
    Chin, Richard
    McLellan, Ailsa
    FitzPatrick, David R.
    Elmslie, Frances
    Lees, Melissa M.
    Schaefer, G. Bradley
    Abbott, Catherine M.
    [J]. MOLECULAR GENETICS & GENOMIC MEDICINE, 2016, 4 (04): : 465 - 474
  • [8] Impact and rates of exonic de novo mutations in patients with intellectual disability
    Pranckeniene, L.
    Jakaitiene, A.
    Ambrozaityte, L.
    Kucinskas, V.
    [J]. EUROPEAN JOURNAL OF HUMAN GENETICS, 2019, 27 : 226 - 226
  • [9] De Novo Mutations in the Genome Organizer CTCF Cause Intellectual Disability
    Gregor, Anne
    Oti, Martin
    Kouwenhoven, Evelyn N.
    Hoyer, Juliane
    Sticht, Heinrich
    Ekici, Arif B.
    Kjaergaard, Susanne
    Rauch, Anita
    Stunnenberg, Hendrik G.
    Uebe, Steffen
    Vasileiou, Georgia
    Reis, Andre
    Zhou, Huiqing
    Zweier, Christiane
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2013, 93 (01) : 124 - 131
  • [10] Intragenic duplication of KCNQ5 gene results in aberrant splicing leading to a premature termination codon in a patient with intellectual disability
    Rosti, Giulia
    Tassano, Elisa
    Rossi, Simone
    Divizia, Maria Teresa
    Ronchetto, Patrizia
    Servetti, Martina
    Lerone, Margherita
    Pisciotta, Livia
    Mancardi, Maria Margherita
    Veneselli, Edvige
    Puliti, Aldamaria
    [J]. EUROPEAN JOURNAL OF MEDICAL GENETICS, 2019, 62 (09)